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A nonlinear fatigue damage accumulation model for block loading conditions considering the load interaction history

  • Yu ming Ye
  • , Hui hua Feng
  • , Kai lin Liu
  • , Dong wei Li
  • , Kai heng Sun
  • , Pei rong Ren*
  • , Xiao guang Yang
  • , Yan tao Sun*
  • , Shi yan Li
  • , Wei qing Huang
  • *此作品的通讯作者
  • Beijing Institute of Technology
  • National Key Laboratory of Multi-perch Vehicle Driving Systems
  • Norinco Group
  • Beijing Aeronautical Engineering Technical Research Center
  • Beijing Power Machinery Institute

科研成果: 期刊稿件文章同行评审

摘要

The increasing complexity of flight mission profiles complicates fatigue damage accumulation in aero-engine components, yet existing nonlinear models are often insufficient for accurate life prediction under such block loading conditions involving frequent transitions. To address this limitation, a new nonlinear damage accumulation model considering the load interaction history was developed. A historical reference parameter was introduced to modify the interaction factor, serving as a dynamic baseline to quantify the cumulative influence of historical loading transitions. The theoretical formulation of the model was initially established through mathematical derivation, and its performance was subsequently validated using experimental data on FGH96 alloy under three designed repeated block spectra of increasing complexity. The results demonstrated that the proposed model achieved prediction accuracy with mean absolute percentage errors within 25 %, outperforming other models that only consider the localized interaction effect. Further validation using published data for common engineering materials under multi-level loading conditions confirmed the model's robustness and generalization capability.

源语言英语
文章编号110899
期刊Engineering Failure Analysis
193
DOI
出版状态已出版 - 1 8月 2026

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